Li Yao, Chan Yang-Hao, Hlevyack Joseph A, Bowers John W, Chou Mei-Yin, Chiang Tai-Chang
Department of Physics and Frederick Seitz Materials Research Laboratory, University of Illinois Urbana-Champaign; Urbana, Illinois 61801, United States.
Institute of Atomic and Molecular Sciences, Academia Sinica, Taipei 10617, Taiwan.
ACS Nano. 2024 Apr 9;18(14):10243-10248. doi: 10.1021/acsnano.4c00724. Epub 2024 Mar 26.
Composite topological heterostructures, wherein topologically protected states are electronically tuned due to their proximity to other matter, are key avenues for exploring emergent physical phenomena. Particularly, pairing a topological material with a superconductor such as Pb is a promising means for generating a topological superconducting phase with exotic Majorana quasiparticles, but oft-neglected is the emergence of bulklike spin-polarized states that are quite relevant to applications. Using high-resolution photoemission spectroscopy and first-principles calculations, we report the emergence of bulk-like spin-polarized topological quantum well states with long coherence lengths in Pb films grown on the topological semimetal Sb. The results establish Pb/Sb heterostructures as topological superconductor candidates and advance the current understanding of topological coupling effects required for realizing emergent physics and for designing advanced spintronic device architectures.
复合拓扑异质结构,其中拓扑保护态由于其与其他物质的接近性而受到电子调控,是探索新兴物理现象的关键途径。特别是,将拓扑材料与超导体(如铅)配对是产生具有奇异马约拉纳准粒子的拓扑超导相的一种有前景的方法,但常常被忽视的是与应用密切相关的块状自旋极化态的出现。利用高分辨率光电子能谱和第一性原理计算,我们报道了在拓扑半金属锑上生长的铅薄膜中出现了具有长相干长度的块状自旋极化拓扑量子阱态。这些结果确立了铅/锑异质结构作为拓扑超导体候选材料,并推进了当前对实现新兴物理和设计先进自旋电子器件架构所需的拓扑耦合效应的理解。